Material Science
High Entropy Alloys
100%
Shear Band
76%
Strain Rate
66%
Mechanical Strength
47%
Adiabatic Shear Band
45%
Work Hardening
42%
Grain Size
36%
Shear Strain
30%
Austenitic Stainless Steels
28%
Powder
28%
Metal
28%
Titanium
28%
Austenite
23%
Fracture Toughness
21%
Dynamic Loads
21%
Electron Backscatter Diffraction
20%
Yield Stress
19%
Interface Structure
19%
Mechanical Property
19%
Dislocation Dynamics
19%
Martensite
18%
Shock Loads
18%
Keratin
14%
Aluminum
14%
Amorphous Metal
14%
Physical Property
14%
Beta Titanium Alloys
14%
Cermet
14%
Aluminum Alloys
14%
Medium-Entropy Alloy
14%
Tomography
14%
Mechanical Stability
14%
Nanocomposites
14%
Ionic Liquid
14%
Atom Probe
14%
Nanocrystalline
14%
Amorphization
14%
Amorphous Material
14%
Tantalum
14%
Edge Dislocation
14%
Stacking Fault
12%
Transmission Electron Microscopy
11%
Plastic Deformation
10%
Solid Solution Hardening
9%
Crystalline Material
9%
Microstructural Evolution
9%
Grain Boundary
8%
Building Material
7%
Engineering
High-Entropy Alloys
90%
Shear Localization
83%
Shear Band
47%
High Strain Rate
41%
Face-Centered Cubic
40%
Strain Hardening
36%
Adiabatic Shear Band
33%
Microstructure
32%
Mechanical Performance
28%
Adiabatic Shear
25%
Shear Strain
24%
Dynamic Deformation
23%
Formability
21%
Loading Condition
19%
Rotational
16%
Natural Energy
14%
Shear Failure
14%
Shock Loads
14%
Induced Deformation
14%
Cermet
14%
Austenitic Stainless Steel
14%
Review Article
14%
Modeling Experiment
14%
Microbands
14%
Transmissions
14%
Cryogenic Temperature
14%
Mechanical Response
13%
Thermal Softening
11%
Dynamic Recrystallization
11%
Shaped Specimen
10%
Strain Rate
10%
Dynamic Loads
10%
Shear Band Formation
10%
Nanocrystalline
9%
Nanograins
9%
Deformation Temperature
9%
Swaging
9%
Plastic Deformation
7%
Low-Temperature
7%
Microstructural Evolution
7%
Structural Materials
7%
Absorbent Material
7%
Yield Stress
7%
Induced Martensitic Transformation
7%
Grain Diameter
7%
Give Rise
7%
Fcc Phase
7%
Solid Solution
7%
Strengthening Mechanism
7%
Phase Field
7%